College of Biological Science and Technology, Fuzhou University, Fuzhou, 350108, China.
College of Biological Science and Technology, Fuzhou University, Fuzhou, 350108, China.
Carbohydr Polym. 2019 Mar 15;208:133-141. doi: 10.1016/j.carbpol.2018.12.015. Epub 2018 Dec 14.
The interaction between polysaccharides and proteins has attracted great interests and the phase behavior and colloidal properties of complexes between chitosan, a positively charged polysaccharide, and proteins still need careful investigation. Here, we use chitosan/casein as model system and monitor their complex size, zeta-potential, light scattering intensity and phase behavior as functions of chitosan deacetylation degree, pH and ionic strength. Chitosan flocculates casein at low polysaccharide concentrations, while stabilizes casein at moderate to high concentrations. Such flocculation and stabilization ability are dependent on the linear charge density of chitosan, where high charge density chitosan saturates casein surface charge and stabilizes the complexes at lower polysaccharide concentration. The complexes are stable at acidic pH where chitosan is highly protonated and the addition of NaCl leads to the reduction in both size and zeta-potential and facilitates complex aggregation. The phase maps are constructed to provide guidelines for further studies on chitosan/casein and other chitosan/protein complexes.
多糖和蛋白质之间的相互作用引起了人们的极大兴趣,壳聚糖(一种带正电荷的多糖)与蛋白质之间的复合物的相行为和胶体性质仍需要仔细研究。在这里,我们使用壳聚糖/酪蛋白作为模型体系,并监测其复合物的大小、ζ-电位、光散射强度和相行为作为壳聚糖脱乙酰度、pH 值和离子强度的函数。壳聚糖在低多糖浓度下絮凝酪蛋白,而在中高浓度下稳定酪蛋白。这种絮凝和稳定能力取决于壳聚糖的线电荷密度,其中高电荷密度的壳聚糖使酪蛋白表面电荷饱和,并在较低的多糖浓度下稳定复合物。在酸性 pH 值下,复合物是稳定的,此时壳聚糖高度质子化,添加 NaCl 会导致粒径和 ζ-电位降低,并促进复合物聚集。构建相图为进一步研究壳聚糖/酪蛋白和其他壳聚糖/蛋白质复合物提供了指导。